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壳聚糖纳米粒子的特性描述和功能化作为双链 RNA(dsRNA)分子的载体,以实现可持续的作物保护。

Characterisation and functionalisation of chitosan nanoparticles as carriers for double-stranded RNA (dsRNA) molecules towards sustainable crop protection.

机构信息

Department of Agriculture, Food, Environment and Animal Sciences (DI4A), University of Udine, Via delle Scienze 206, 33100 Udine, Italy.

Research Centre for Viticulture and Enology, Council for Agricultural Research and Economics (CREA-VE), Via XXVIII Aprile 26, 31015 Conegliano (TV), Italy.

出版信息

Biosci Rep. 2023 Nov 30;43(11). doi: 10.1042/BSR20230817.

Abstract

The need to minimise the impact of phytosanitary treatments for disease control boosted researchers to implement techniques with less environmental impact. The development of technologies using molecular mechanisms based on the modulation of metabolism by short dsRNA sequences appears promising. The intrinsic fragility of polynucleotides and the high cost of these techniques can be circumvented by nanocarriers that protect the bioactive molecule enabling high efficiency delivery to the leaf surface and extending its half-life. In this work, a specific protocol was developed aiming to assess the best methodological conditions for the synthesis of low-size chitosan nanoparticles (NPs) to be loaded with nucleotides. In particular, NPs have been functionalised with partially purified Green Fluorescent Protein dsRNAs (GFP dsRNA) and their size, surface charge and nucleotide retention capacity were analysed. Final NPs were also stained with FITC and sprayed on Nicotiana benthamiana leaves to assess, by confocal microscopy, both a distribution protocol and the fate of NPs up to 6 days after application. Finally, to confirm the ability of NPs to increase the efficacy of dsRNA interference, specific tests were performed: by means of GFP dsRNA-functionalised NPs, the nucleotide permanence during time was assessed both in vitro on detached wild-type N. benthamiana leaves and in planta; lastly, the inhibition of Botrytis cinerea on single leaves was also evaluated, using a specific fungal sequence (Bc dsRNA) as the NPs' functionalising agent. The encouraging results obtained are promising in the perspective of long-lasting application of innovative treatments based on gene silencing.

摘要

为了尽量减少植物病虫害防治的植物检疫处理的影响,研究人员开始实施对环境影响较小的技术。利用基于短双链 RNA 序列代谢调节的分子机制开发技术似乎很有前景。由于多核苷酸的固有不稳定性和这些技术的高成本,可以通过纳米载体来规避,纳米载体可以保护生物活性分子,从而实现向叶表面的高效传递,并延长其半衰期。在这项工作中,开发了一种特定的方案,旨在评估用于负载核苷酸的低尺寸壳聚糖纳米颗粒(NPs)的最佳方法条件。特别是,用部分纯化的绿色荧光蛋白 dsRNA(GFP dsRNA)对 NPs 进行了功能化,并分析了它们的大小、表面电荷和核苷酸保留能力。最终的 NPs 还用 FITC 染色,并喷洒在 Nicotiana benthamiana 叶片上,通过共聚焦显微镜评估,包括分配方案和 NPs 在施用后 6 天内的命运。最后,为了确认 NPs 增加 dsRNA 干扰效力的能力,进行了特定的测试:通过 GFP dsRNA 功能化的 NPs,评估了在离体野生型 N. benthamiana 叶片上和体内核苷酸的持续时间;最后,还评估了单叶上 Botrytis cinerea 的抑制作用,使用特定的真菌序列(Bc dsRNA)作为 NPs 的功能化剂。获得的令人鼓舞的结果有望为基于基因沉默的创新治疗方法的长效应用提供前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b52/10643051/edfe560078b6/bsr-43-bsr20230817-g1.jpg

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